Keywords: جذب انرژی; Axial compression; Energy absorber; Finite element method; Design of experiments; Optimization; Thin-walled structure;
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Keywords: جذب انرژی; Innovative improved model; Novel half-ring connection; Ring; Energy absorber; Finite element method; Non-linear hysteresis analyses;
Keywords: جذب انرژی; Energy absorber; Cutting deformation; Dynamic tests; Finite element method; Aluminum elastic-plastic-damage behavior;
Keywords: جذب انرژی; Plastic buckling; Case-hardened forms; Quasi-static loading; Energy absorber;
Keywords: جذب انرژی; Energy absorber; Square section; Internal and external stiffeners; Testing; Simulation;
Keywords: جذب انرژی; Tandem honeycomb; Homogenized constitutive model; Multi-cell tubes; Energy absorber;
Keywords: جذب انرژی; Energy absorber; Expanded metal tube; Impact; Theoretical method; Drop-Hammer;
Keywords: جذب انرژی; Energy absorber; Different cross section; Composite column; Polygonal die; Axial compression; Splitting process
Keywords: جذب انرژی; Nested tube; Loading angle; Grooved specimen; Energy absorber; Thin-walled cross-section; Flattening process.
Keywords: جذب انرژی; Thermoplastic composite; Experimental evaluation; Energy absorber;
Keywords: جذب انرژی; Honeycomb structure; Crashworthiness parameters; Finite element method; Impact load; Energy absorber
Keywords: جذب انرژی; Circular thin tube; Energy absorber; Progressive buckling; Axial impact; Strain rate; Interfacial pressure
Keywords: جذب انرژی; Thin-walled structure; Energy absorber; Multi-cell tube
Keywords: جذب انرژی; Rockfall; Numerical procedure; Three-dimensional modeling; Energy absorber; Wire rope; Impact location;
Finite element modeling of a novel cutting deformation mode of AA6061-T6 tubes employing higher order Lagrangian element formulations
Keywords: جذب انرژی; Energy absorber; Damage and failure modeling; Aluminum; Finite element analysis; Optimization; Deformation mechanisms;
Selection of optimum design for conical segmented aluminum tubes as energy absorbers: Application of MULTIMOORA method
Keywords: جذب انرژی; Energy absorber; Conical segmented tube; MULTIMOORA; Numeric logic; Numerical simulation;
Energy compensation of slow extracted beams with RF acceleration
Keywords: جذب انرژی; Energy absorber; Scanning irradiation; Slow extraction
An investigation on the energy absorption characteristics of multi-cell square tubes
Keywords: جذب انرژی; Thin-walled structure; Energy absorber; Multi-cell square tube; Analytical model
Flattening process of empty and polyurethane foam-filled E-glass/vinylester composite tubes – An experimental study
Keywords: جذب انرژی; E-glass/vinylester; Composite tube; Energy absorber; Flattening; Lateral compression; Polyurethane foam
Adequacy of personal fall arrest energy absorbers in relation to heavy workers
Keywords: جذب انرژی; Occupational safety; Working-at-height; Fall from height; Fall protection; Fall arrest; Energy absorber
Plastic collapse analysis of thin-walled circular tubes subjected to bending
Keywords: جذب انرژی; Bending; Circular tube; Collapse mechanism; Energy absorber
On the development of a knowledge-based design support system for energy absorbers
Keywords: جذب انرژی; Energy absorber; Knowledge base; Design support system; Axiomatic Design
Theoretical and finite element study of a compact energy absorber
Keywords: جذب انرژی; Regular honeycomb structure; Graded honeycomb structure; Banana peel; Collapse mechanism; Plastic hinge; Energy absorber; Plateau stress
Optimised design of nested oblong tube energy absorbers under lateral impact loading
Keywords: جذب انرژی; Energy absorber; Lateral crushing; Mild steel
FEM analysis of external inversion and energy absorbing characteristics of inverted tubes
Keywords: جذب انرژی; External inversion; FEM; Energy absorber; Experimental work
A numerical study on the axial crushing response of hybrid pultruded and ±45° braided tubes
Keywords: جذب انرژی; Energy absorber; Pultruded tube; Braiders; Crushing; Finite element
Metallic tube type energy absorbers: A synopsis
Keywords: جذب انرژی; Energy absorber; Tube; Frusta; Mild steel; Aluminium; Quasi-static; Dynamic; ANSYS; LS-DYNA
Experimental optimization of composite collapsible tubular energy absorber device
Keywords: جذب انرژی; Optimization; Sizing; Shape; Composite; Energy absorber; Tube
Methodology for the development of an energy absorber: Application to worker security ropes
Keywords: جذب انرژی; Dynamic stress–strain curves; Partially stretched yarns; Efficiency; Personal protective equipment; Energy absorber
Progressive crushing of fiber-reinforced composite structural components of a Formula One racing car
Keywords: جذب انرژی; Energy absorber; Composite structures; Failure mechanism; Formula One racing car; Finite element analyses;
Inward inversion of capped-end frusta as impact energy absorbers
Keywords: جذب انرژی; Energy absorber; Frusta inversion; ABAQUS;